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FIGURE 6. Cyproidea liodactyla Hirayama, 1978 in Five species of the family Cyproideidae (Crustacea: Amphipoda) from Japan, with the description of a new genus and two new species

FIGURE 6. Cyproidea liodactyla Hirayama, 1978. Male (OMNH-Ar-9940), 3.6 mm. Fixed specimen, 20 April 2012 (1 day after fixation), photography by H. Kohtsuka.

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FIGURE 8 in Five species of the family Cyproideidae (Crustacea: Amphipoda) from Japan, with the description of a new genus and two new species

FIGURE 8. Cyproidea okinawensis sp. nov. All except for D1, E1 and F, holotype, female (OMNH-Ar-9951), 5.0 mm; D1, E1, paratype, female (OMNH-Ar-9953), 4.3 mm; F, paratype, female (OMNH-Ar-9952), 4.5 mm. A, left antenna 1, lateral view; A1, accessory flagellum of left antenna 1, medial view; B, left antenna 2, lateral view; C, upper lip, posterior view; D, left mandible, ventral view; D1, incisor, lacinia mobilis and accessory blades of left mandible, medial view; E, right mandible, dorsal view; E1, incisor and accessory blades of right mandible, medial view; F, lower lip, ventral view; G, right maxilla 1, ventral view; G1, distal part of right maxilla 1, ventral view, normal setae omitted; G2, distal part of left maxilla 1 palp, dorsal view, normal setae omitted; H, left maxilla 2, dorsal view; I, right maxilliped, ventral view; I1, distal part of outer plate of right maxilliped, ventral view, normal setae omitted; I2, distal part of inner plate of right maxilliped, ventral view. Scale: A–B, 0.25 mm; C–I, 0.22 mm; A1, 0.125 mm; D1, E1, G1–2, I1–2, 0.11 mm.

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FIGURE 7 in Five species of the family Cyproideidae (Crustacea: Amphipoda) from Japan, with the description of a new genus and two new species

FIGURE 7. Cyproidea okinawensis sp. nov. Holotype, female (OMNH-Ar-9951), 5.0 mm. Habitus, lateral view.

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FIGURE 3. Cyproidea liodactyla Hirayama, 1978. All but F in Five species of the family Cyproideidae (Crustacea: Amphipoda) from Japan, with the description of a new genus and two new species

FIGURE 3. Cyproidea liodactyla Hirayama, 1978. All but F, male (OMNH-Ar-9940), 3.6 mm; F, male (OMNH-Ar-9942), 3.3 mm. A, left antenna 1, lateral view; A1, accessory flagellum of left antenna 1, medial view; B, left antenna 2, medial view; C, upper lip, anterior view; D, left mandible, ventral view; D1, incisor, lacinia mobilis and accessory blades of left mandible, ventral view; E, right mandible, medial view; E1, incisor and accessory blades of right mandible, medial view; F, lower lip, ventral view; G, left maxilla 1, dorsal view, outer margin turned up; G1, distal part of left maxilla 1, dorsal view, normal setae omitted; H, right maxilla 2, ventral view; I, left maxilliped, dorsal view; I1, distal part of outer plate of left maxilliped, dorsal view, normal setae omitted; I2, distal part of inner plate of left maxilliped, dorsal view, normal setae omitted. Scale: A–B, 0.25 mm; C–I, 0.2 mm; A1, 0.125 mm; D1, E1, G1, I1–2, 0.1 mm.

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FIGURE 4. Cyproidea liodactyla Hirayama, 1978 in Five species of the family Cyproideidae (Crustacea: Amphipoda) from Japan, with the description of a new genus and two new species

FIGURE 4. Cyproidea liodactyla Hirayama, 1978. Male (OMNH-Ar-9940), 3.6 mm. A, left gnathopod 1, lateral view; A1, palm and dactylus of left gnathopod 1, lateral view; B, left gnathopod 2, lateral view; B1, posterodistal part of left gnathopod 2, lateral view, thin setae omitted; C–D, left pereopods 3–4, lateral views; E–F, left pereopods 5–6, lateral views, gills lost; G, left pereopod 7, lateral view. Scale: A–G, 0.5 mm; A1, B1, 0.25 mm.

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FIGURE 5. Cyproidea liodactyla Hirayama, 1978. A in Five species of the family Cyproideidae (Crustacea: Amphipoda) from Japan, with the description of a new genus and two new species

FIGURE 5. Cyproidea liodactyla Hirayama, 1978. A, male (OMNH-Ar-9942), 3.3 mm; B–G, male (OMNH-Ar-9940), 3.6 mm; H–I, female (OMNH-Ar-9943), 3.6 mm; J, paratype-2, sex unknown, 3.3 mm. A, right pleonal epimera 1–3, lateral view; B, left pleopod 1, anterior view; C, left pleopod 2, lateral view; D, left pleopod 3, posterior view; E, left uropod 1, dorsomedial view; F, right uropod 2, dorsomedial view; G, urosomite 3, telson and right uropod 3, dorsal view; H–I, left gnathopods 1–2, lateral views; J, left antenna 1, lateral view, aesthetascs and setae omitted. Scale: H–I, 0.57 mm; B–D, 0.5 mm; A, E–G, 0.35 mm; J, 0.22 mm.

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FIGURE 22. Terepeltopes dolichorhunia Hirayama, 1983. All except for G and G1 in Five species of the family Cyproideidae (Crustacea: Amphipoda) from Japan, with the description of a new genus and two new species

FIGURE 22. Terepeltopes dolichorhunia Hirayama, 1983. All except for G and G1, female (OMNH-Ar-9966), 3.1 mm; G, G1, female (OMNH-Ar-9967), 3.1 mm. A, left antenna 1, lateral view; B, left antenna 2, lateral view; C, upper lip, posterior view; D, left mandible, medial view; D1, incisor, lacinia mobilis and accessory blades of left mandible, medial view; E, right mandible, dorsal view, palp damaged; E1, incisor, lacinia mobilis and accessory blades of right mandible, dorsal view; F, lower lip, ventral view; G, left maxilla 1, lateral view; G1, distal part of left maxilla 1, lateral view, normal setae omitted; H, left maxilla 2, dorsal view; I, left maxilliped, ventral view; I1, distal part of inner plate of left maxilliped, dorsal view, normal setae omitted. Scale: A–B, 0.2 mm; C–I, 0.15 mm; D1, E1, G1, I1, 0.075 mm.

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FIGURE 14 in Five species of the family Cyproideidae (Crustacea: Amphipoda) from Japan, with the description of a new genus and two new species

FIGURE 14. Metacyproidea makie gen. et sp. nov. Holotype, female (OMNH-Ar-9956), 7.9 mm. A, right gnathopod 1, lateral view; A1, left coxa 1, lateral view; A2, posterodistal part of left gnathopod 1, lateral view; B, left gnathopod 2, lateral view; B1, posterodistal part of left gnathopod 2, lateral view; C–G, left pereopods 3–7, lateral views; G1, left coxa 7, lateral view. Scale: A–G, A1, G1, 1 mm; A2, B1, 0.5 mm.

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FIGURE 18 in Five species of the family Cyproideidae (Crustacea: Amphipoda) from Japan, with the description of a new genus and two new species

FIGURE 18. Moolapheonoides acutifalcatus Kobayashi & Ishimaru, 2005. A–C, G–I, G1, I1, female (OMNH-Ar-9961), 3.1 mm; D–F, D1, E1, female (OMNH-Ar-9962), 3.5 mm. A, left antenna 1, lateral view; B, left antenna 2, lateral view; C, upper lip, anterior view; D, right mandible, ventral view; D1, incisor, lacinia mobilis and accessory blades of right mandible, ventral view; E, left mandible, dorsal view, palp lost; E1, incisor, lacinia mobilis and accessory blades of left mandible, dorsal view; F, lower lip, ventral view; G, right maxilla 1, dorsolateral view; G1, distal part of right maxilla 1, dorsolateral view, normal setae omitted; H, left maxilla 2, dorsal view; I, right maxilliped, ventral view; I1, distal part of outer and inner plates of right maxilliped, ventral view, normal setae omitted. Scale: A–B, 0.2 mm; C–I, 0.14 mm; D1, E1, G1, I1, 0.07 mm.

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FIGURE 12 in Five species of the family Cyproideidae (Crustacea: Amphipoda) from Japan, with the description of a new genus and two new species

FIGURE 12. Metacyproidea makie gen. et sp. nov. Holotype, female (OMNH-Ar-9956), 7.9 mm. Habitus, lateral view.

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FIGURE 25. Terepeltopes dolichorhunia Hirayama, 1983 in Five species of the family Cyproideidae (Crustacea: Amphipoda) from Japan, with the description of a new genus and two new species

FIGURE 25. Terepeltopes dolichorhunia Hirayama, 1983. Female (OMNH-Ar-9968), 3.0 mm. Fixed specimen, 21 July 2012 (4 days after fixation), photography by H. Ariyama.

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FIGURE 4 in New taxa and arrangements within the family Latrunculiidae (Demospongiae, Poecilosclerida)

FIGURE 4. Megascleres and microscleres of Latrunculia (Latrunculia) austini Samaai et al. 2006: A–D. Anisodiscorhabds from holotype RBCM 982-62-1 showing variations, scale = 10 µm; E. Typical anisodiscorhabd from Gulf of Alaska specimen NHMUK 2008.3.27.3, scale = 10 µm; F. Megascleres shown at full length, scale = 100 µm; G. Smooth proximal and distal tips of megasclere, scale = 10 µm; H. Protorhabd showing well-separated basal whorl progenitor above manubrium, scale = 10 µm; I–J. Malformed anisodiscorhabds with deficient or absent apical whorls and indistinguishable basal whorl and manubrium, scale = 10 µm; K–N. Anisodiscorhabds with semi-differentiated basal whorl and manubrium, scale = 10 µm; O–R. Anisodiscorhabds with manubrium completely separate from basal whorl, scale = 10 µm; Fig. 4F–Q images taken from specimen RBCM 015-00478-001, Queen Charlotte Sound, British Columbia. Fig. 4A–D reproduced from Samaai et al. (2006, Fig. 1O).

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FIGURE 1 in New taxa and arrangements within the family Latrunculiidae (Demospongiae, Poecilosclerida)

FIGURE 1. Comparison of microsclere morphology in family Latrunculiidae (not to scale): A. Anisodiscorhabd form in subgenus Latrunculia (Latrunculia) du Bocage, 1869 (type species L. (L.) bocagei Ridley & Dendy, 1886), showing the six substructures that characterise the anisodiscorhabds, whether differentiated or undifferentiated: m = manubrium, bw = basal whorl, mw = median whorl, sw = subsidiary whorl, aw = apical whorl, a = apex; B. Anisodiscorhabd form in subgenus Latrunculia (Biannulata) Samaai, Gibbons & Kelly, 2006 (type species L. (B.) kaakaariki Alvarez et al., 2002); C. Anisodiscorhabd form in subgenus Latrunculia (Uniannulata) subgen. nov. (type species L. (U.) oparinae Samaai & Krasokhin, 2002); D. Isospinodiscorhabd in genus Cyclacanthia Samaai, Govender & Kelly, 2004 (type species C. bellae (Samaai, Gibbons, Kelly & Davies-Coleman, 2003); E. Isochiadiscorhabd in genus Tsitsikamma Samaai & Kelly, 2002 (type species T. favus Samaai & Kelly, 2002); F. Anisodiscorhabd and amphiclad sceptre in genus Sceptrella Schmidt, 1870 (type species Sceptrella regalis Schmidt, 1870); G. Short anisodiscorhabd and long anisoconicorhabd in genus Latrunclava gen. nov. (type species L. imago gen. et sp. nov.); H. Anisodiscorhabd in genus Bomba gen. nov. (type species B. endeavourensis gen. et sp. nov.). Fig. 1A, B, D modified and reproduced from Samaai et al. (2006), Samaai et al. (2004) and Samaai et al. (2003), respectively, with permission from Zootaxa (Magnolia Press). Fig. 1E, F modified with permission from T. Samaai.

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FIGURE 12 in New taxa and arrangements within the family Latrunculiidae (Demospongiae, Poecilosclerida)

FIGURE 12. Morphology, megascleres and microscleres of Bomba tricincta (Hentschel, 1929) gen. nov., comb. nov.: A. Illustration of holotype ZMB Por 7851 from Northern Norway, 198 m (from Hentschel (1929, Pl. 12, Fig. 3); B. Large, thick tracts of megascleres, scale = 500 µm; C. Anisostyle, slightly sinuous, scale = 100 µm; D. Smooth proximal tip of anisostyle, scale = 100 µm; E. Smooth distal tip of anisostyle, scale = 100 µm; F. Range of anisodiscorhabds, scale = 50 µm; G. Range of protorhabds from earliest to later stages showing gradual development of the three whorls, scale = 50 µm. All images taken from microscope slide of holotype.

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FIGURE 7 in New taxa and arrangements within the family Latrunculiidae (Demospongiae, Poecilosclerida)

FIGURE 7. Morphology, megascleres and microscleres of Latrunculia (Biannulata) lincfreesei sp. nov.: A. RBCM 015- 00486-001, preserved holotype, scale = 1 cm; B. RBCM 015-00486-002, preserved paratype, scale = 1 cm; C. Histological section showing palisade of anisodiscorhabds in outermost ectosome, a paratangential layer of megascleres below palisade, and cavernous choanosome below, scale = 200 µm; D. Typical slightly sinuous anisostyle, scale = 200 µm; E. Acanthose head of anisostyle, scale = 20 µm; F. Typical anisodiscorhabds without manubrium below basal whorl, scale = 20 µm; G. Typical anisodiscorhabds with manubrium below basal whorl, scale = 20 µm; H, I. Apices of anisodiscorhabd showing apical whorl (apex absent), scale = 20 µm; J. Base of anisodiscorhabd showing basal whorl and manubrium, scale = 20 µm.

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FIGURE 13 in New taxa and arrangements within the family Latrunculiidae (Demospongiae, Poecilosclerida)

FIGURE 13. Morphology, megascleres and microscleres of Latrunclava imago gen. et sp. nov.: A. Latrunclava imago gen. et sp. nov., preserved holotype RBCM 150-00490-001, central Aleutian Islands, 175 m, scale = 1 cm; B. Range of anisoconicorhabds, scale = 50 µm; C. Microfossil anisodiscorhabds of Latrunculia oamaruensis Hinde & Holmes, 1892 (from Hinde & Holmes, 1892: 218, Pl. 11, Fig. 34, 35), scale = 50 µm; D. Head of anisostyle, acanthose with retrovert spines, scale = 20 µm; E. Typical anisodiscorhabds with manubrium, scale = 20 µm; F. Anisodiscorhabd lacking a manubrium, scale = 20 µm; G. Protorhabds showing presence of budding manubrium, scale = 20 µm; H. Basal portion of anisodiscorhabd showing manubrium and basal whorl, scale = 20 µm; I. Apical whorl (apex absent), scale = 20 µm.

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FIGURE 3 in New taxa and arrangements within the family Latrunculiidae (Demospongiae, Poecilosclerida)

FIGURE 3. Latrunculia (Latrunculia) austini Samaai, Gibbons & Kelly, 2006: A. Holotype RBCM 982-62-1, British Columbia; B. Skookumchuck Narrows, Jervis Inlet, in situ; C. NHMUK 2008.3.27.3, Gulf of Alaska, 102 m, in situ; D. NHMUK 2008.3.27.3, ibid, grid marks under preserved specimen are 1 cm2; E. RBCM 014-00091-001, British Columbia, 384 m, in situ; F. RBCM 015-00479-001, Gulf of Alaska, 88 m, in situ; G. RBCM 015-00479-004, Gulf of Alaska, 106 m, distance between red laser dots is 10 cm; H. Ibid; I. Queen Charlotte Sound, 48.125° N, 125.371° W, 115 m, 27 May 2006, OCNMS ROPOS ROV Dive 953, in situ; J. Queen Charlotte Sound, 48.302° N, 124.938° W, 243 m, 01 Jun 2006, OCNMS ROPOS ROV Dive 958, in situ; K. Queen Charlotte Sound, 48.170° N, 125.370° W, 114 m, 11 Jul 2008, OCNMS ROPOS ROV Dive 1160, in situ. Fig. 3A, 3C, 3D reproduced from Samaai et al. (2006, Fig. 3H) with permission from Zootaxa (Magnolia Press), Stone et al. (2011: 145, Fig. 2) and Stone et al. (2011: 145, Fig. 1), respectively. Image credits for Fig. 3A, B: Neil McDaniel, Fig. 3I‒K: Olympic Coast National Marine Sanctuary, taken using the Canadian Scientific Submersible Facility ROPOS ROV digital still camera, Fig. 3C, D, F, G, H: Robert Stone.

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FIGURE 6 in New taxa and arrangements within the family Latrunculiidae (Demospongiae, Poecilosclerida)

FIGURE 6. Megascleres and microscleres of Latrunculia (Latrunculia) hamanni sp. nov.: A. Histological section showing palisade of anisodiscorhabds in outermost ectosome, a paratangential layer of megascleres below palisade, and cavernous choanosome beneath ectosome (from NHMUK 2006.8.24.1), scale = 200 µm; B. Acanthose head of anisostyle with retrovert spines (from NHMUK 2008.3.27.2), scale = 10 µm; C. Typical anisodiscorhabds (from NHMUK 2006.8.24.2), scale = 20 µm; D. Typical anisodiscorhabds (from NHMUK 2008.3.27.2), scale = 20 µm; E. Range of protoanisodiscorhabds as they mature (from NHMUK 2008.3.27.2), scale = 20 µm; F. Upper portion of anisodiscorhabd showing subsidiary whorl, and tufted apical whorl and apex (from NHMUK 2006.8.24.1), scale = 10 µm; G. Lower portion of anisodiscorhabd showing basal whorl and lower manubrium (from NHMUK 2008.3.27.2), scale = 10 µm.

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FIGURE 5 in New taxa and arrangements within the family Latrunculiidae (Demospongiae, Poecilosclerida)

FIGURE 5. Latrunculia (Latrunculia) hamanni sp. nov.: A. NHMUK 2008.3.27.2, Aleutian Islands, 146 m, in situ; B. Paratype RBCM 015-00483-001, Kanaga Island, central Aleutian Islands, 150 m, in situ, with L. oparinae (left, green specimen); C. Paratype RBCM 015-00483-001, preserved specimen; D. NMHUK 2011.2.11.4, Kiska Island, western Aleutian Islands, 88 m, deck photo; E. Paratype RBCM 015-00481-002, Umnak Island, eastern Aleutian Islands, 265 m, preserved specimen. Scale bar for all images 5 cm. Fig. 5A–C reproduced with permission from Stone et al. (2011). Fig. 5D reproduced with permission from James Sims, image taken aboard NOAA Fisheries FV Sea Storm. Fig. 5E by Robert Stone.

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FIGURE 2 in New taxa and arrangements within the family Latrunculiidae (Demospongiae, Poecilosclerida)

FIGURE 2. Distribution of North Pacific Latrunculiidae species: A. Gulf of Alaska, U.S.A and British Columbia, Canada; B. Central Aleutian Islands and Gulf of Alaska, U.S.A. Locality data for the four Kurile Island specimens of Latrunculia (Uniannulata) oparinae subgen. nov. taken from Samaai & Krasokhin (2002) and Samaai et al. (2006). L = Latrunculia, B = Bomba gen. nov.

opennotspecifiedDec 2016View details →

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Allen Brain Atlas

Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.

allen-brain-atlas
neuroscienceopenDocumentation, web resources, and API references are available online.
Last verified 2026-04-30Open record

Annotated Behaviour and Observability Dataset (ABODe)

ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.

abode-home-cage
behavioral-neuroscienceopenThe DataShare record exposes download links for annotations, documentation, license text, and the zipped per-snippet data directory.
Last verified 2026-04-30Open record

DANDI Archive for NWB datasets

DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.

dandi-nwb
electrophysiologyopenPublished Dandiset metadata and archive endpoints are available through the production DANDI API.
Last verified 2026-04-30Open record

International Brain Laboratory public data

The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.

ibl
behavioral-neuroscienceopenPublic sessions can be searched and loaded from the IBL public data server through ONE.
Last verified 2026-04-29Open record

OpenNeuro

OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.

openneuro
neuroscienceopenPublished datasets are available on demand over the internet.
Last verified 2026-04-29Open record